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Modeling the west Florida coastal ocean by downscaling from the deep ocean, across the continental shelf and into the estuaries

机译:通过从深海,跨大陆架到河口的尺度缩小来模拟西佛罗里达沿海海洋

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We arrive at a coastal ocean circulation model, suitable for downscaling from the deep ocean, across the continental shelf and into the estuaries, by nesting the unstructured grid, Finite Volume Coastal Ocean Model (FVCOM, inner model) into the structured grid, Global Hybrid Coordinate Model (HYCOM, outer model). The coastal ocean circulation model is three-dimensional, density dependent and inclusive of tides (eight constituents). A calendar year 2007 simulation for the west Florida continental shelf is quantitatively tested against in situ observations of sea level from coastal tide gauges and water column currents and temperature from moored acoustic Doppler current profilers. Agreements between model simulations and observations for both tides and low frequency variability over the calendar year demonstrate the usefulness of our approach. Model horizontal resolution varies from around 12 km at the open boundary to 150 m in the estuaries. Sensitivity experiments for vertical resolution led to the adoption of 21σ-layers. Several model limitations are discussed, including seasonal steric effects and deep ocean (outer) model errors that may propagate through the inner model. With adequate observations spanning the inner model domain, we may determine when the outer model is in error at the nesting zone. This finding further highlights the need for coordinating coastal ocean observing and modeling programs. The nesting of unstructured and structured grid models is a new approach to coastal ocean circulation modeling. It provides a means for circulation hindcasts and nowcasts/forecasts, and, after combining with biological process models, may provide a framework for multi-disciplinary modeling of coastal ocean ecology from the deep ocean to the head of tides.
机译:通过将非结构化网格(有限体积沿海海洋模型(FVCOM,内部模型))嵌套到结构化网格(Global Hybrid)中,我们得出了适合于从深海,跨大陆架到河口降尺度的沿海海洋环流模型。坐标模型(HYCOM,外部模型)。沿海海洋环流模型是三维的,取决于密度,并包含潮汐(八种成分)。针对沿海潮汐仪对海平面的原位观测,系泊声多普勒电流剖面仪的水柱流和温度的原位观测,对西佛罗里达州大陆架的2007日历年模拟进行了定量测试。历年中潮汐和低频变化的模型模拟与观测之间的协议证明了我们方法的有效性。模型的水平分辨率从开放边界的约12 km到河口的150 m不等。垂直分辨率的灵敏度实验导致采用21σ层。讨论了几个模型限制,包括季节性空间效应和可能通过内部模型传播的深海(外部)模型误差。通过对内部模型域的充分观察,我们可以确定外部模型何时在嵌套区域出错。这一发现进一步凸显了协调沿海海洋观测和模拟计划的必要性。非结构化和结构化网格模型的嵌套是沿海海洋环流建模的一种新方法。它为环流后预报和临近预报/预报提供了一种手段,并且在与生物过程模型结合之后,可以为从深海到潮头的沿海海洋生态学的多学科建模提供框架。

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